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Beta-Decay Half-Lives beyond Ca54: A Systematic Survey of Decay Properties Approaching the Neutron Dripline
- Ong, W-J;
- Xu, ZY;
- Grzywacz, R;
- Ravlić, A;
- Cox, I;
- Allmond, JM;
- King, TT;
- Rasco, BC;
- Rykaczewski, KP;
- Schatz, H;
- Sherrill, BM;
- Tarasov, OB;
- Brown, BA;
- Ajayi, S;
- Arora, H;
- Ayangeakaa, AD;
- Berg, HC;
- Berkman, JM;
- Bleuel, DL;
- Bosmpotinis, K;
- Carpenter, MP;
- Cerizza, G;
- Chester, A;
- Christie, JM;
- Crawford, HL;
- Crider, BP;
- Davis, J;
- Doetsch, AA;
- Duarte, JG;
- Estrade, A;
- Fijalkowska, A;
- Frantzis, C;
- Fukushima, K;
- Gaballah, T;
- Gray, TJ;
- Good, E;
- Haak, K;
- Hanai, S;
- Hartley, AC;
- Harke, JT;
- Hermansen, K;
- Harris, C;
- Hausmann, M;
- Hoff, DEM;
- Hoskins, D;
- Huffman, J;
- Jain, R;
- Karny, M;
- Kitamura, N;
- Kolos, K;
- Kwan, E;
- Laminack, A;
- Liddick, SN;
- Longfellow, B;
- Lubna, RS;
- Lyons, S;
- Madurga, M;
- Mogannam, M;
- Neupane, S;
- Nowicki, A;
- Ogunbeku, TH;
- Owens-Fryar, G;
- Palomino, JR;
- Portillo, M;
- Rajabali, MM;
- Richard, AL;
- Richardson, I;
- Ronning, E;
- Rose, GE;
- Ruland, T;
- Scielzo, ND;
- Scriven, DP;
- Seweryniak, D;
- Siegl, K;
- Singh, M;
- Smith, MK;
- Spyrou, A;
- Stepaniuk, M;
- Sweet, A;
- Tripathi, V;
- Tsantiri, A;
- Uthayakumaar, S;
- Walters, WB;
- Watters, S;
- Wolinska-Cichocka, M;
- Yokoyama, R
Published Web Location
https://doi.org/10.1103/5yrq-s3g5Abstract
In an experiment performed at the Facility for Rare Isotope Beams (FRIB) using the FRIB Decay Station initiator, 15 new half-lives of isotopes near ^{54}Ca were measured. A new method of extracting lifetimes from experimental data, taking into account the unknown β-delayed neutron emission branches of very neutron-rich nuclei, was developed to enable systematic uncertainty analysis. The experiment observed a dramatic change in the half-life systematics for the isotopes with neutron number N=34. Beyond N=34, the decline of nuclear lifetime is much slower, leading to longer than anticipated lifetimes for near-dripline nuclei. State-of-the-art shell-model calculations can explain the experimental results, revealing the imprint of shell effects and the need for modification of single-particle neutron states. The results from a newly developed quasirandom-phase approximation model with potential for making global predictions were also tested against the experimental results and good agreement was found.
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